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基于 RFID 感知的公共交通系统中基于运动的群组位置管理的建模与性能分析。

Modeling and performance analysis of movement-based group location management using RFID sensing in public transportation systems.

机构信息

School of Electronic Engineering, Soongsil University, 511 Sangdo-dong, Dongjak-Gu, Seoul 156-743, Korea.

出版信息

Sensors (Basel). 2012 Nov 22;12(12):16077-98. doi: 10.3390/s121216077.

Abstract

Location management, which consists of location registration and paging, is essential to provide mobile communication services to mobile stations (MSs). Since MSs riding on a public transportation system (TS) generates significant location registration signaling loads simultaneously when a TS with riding MSs moves between location areas (LAs), group location management was proposed. Under the group location management, an MS performs group registration when it gets on a TS and performs group deregistration when it gets off a TS. Then, only a TS updates its current location when it changes LA, on behalf of all riding MSs. In this paper, movement-based group location management using radio frequency identification (RFID) is proposed, where the MS's getting on and getting off behaviors are detected using RFID and only location update of a TS is carried out if the number of crossed cells from the last updated cell exceeds a predefined movement threshold, on behalf of all riding MSs. Then, we develop an analytical model for the performance analysis of the movement-based group location management and analyze the effects of various parameters on the performance. The results show that the movement-based group location management has reduced signaling cost compared with movement-based individual location management, and optimal performance can be achieved by choosing appropriate movement threshold values.

摘要

位置管理包括位置注册和寻呼,对于向移动台 (MS) 提供移动通信服务至关重要。由于公共交通系统 (TS) 上的 MS 会在 MS 移动到位置区域 (LA) 之间同时生成大量位置注册信令负载,因此提出了组位置管理。在组位置管理中,MS 在登上 TS 时执行组注册,在离开 TS 时执行组注销。然后,仅当 TS 更改 LA 时,才代表所有乘坐 MS 进行位置更新。本文提出了一种基于移动的组位置管理方法,该方法使用射频识别 (RFID) 检测 MS 的上下车行为,并且仅在从最后更新的小区穿过的小区数量超过预定义的移动阈值时才对 TS 进行位置更新,代表所有乘坐的 MS。然后,我们开发了一个分析模型来分析基于移动的组位置管理的性能,并分析了各种参数对性能的影响。结果表明,与基于移动的个体位置管理相比,基于移动的组位置管理减少了信令开销,并且通过选择适当的移动阈值可以获得最佳性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e7a/3571772/7c406cd818ee/sensors-12-16077f1.jpg

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